Literature DB >> 20196720

Osteopontin; as a target molecule for the treatment of inflammatory diseases.

Junko Morimoto1, Shigeyuki Kon, Yutaka Matsui, Toshimitsu Uede.   

Abstract

It has been well recognized that inflammatory responses are part of pathogenesis for various disorders such as autoimmune diseases. For example, multiple sclerosis (MS) is an inflammatory demyelinating disease of central nervous system that is presumably caused by activated T cells specific for myelin antigens. Rheumatoid arthritis (RA) is also a chronic inflammatory disease characterized by synovial inflammation in which several inflammatory cytokines are involved. On the other hand, Osteopontin (Opn) is a pleiotropic cytokine expressed by activated T cells, dendritic cells (DCs) and macrophages and its expression is up-regulated during inflammation. Secreted form of Opn (s-Opn), which is modified by phosphorylation, glycosylation and proteolytic cleavage with thrombin, has activities as a T helper type 1 (Th1) cytokine and as a chemoattractant for many types of cells through integrin receptors and CD44. Recently, it has been uncovered that intracellular form of Opn (i-Opn) is a critical regulator for Toll like receptor-9 (TLR-9), TLR-7-dependent interferon-alpha (IFN-alpha) expression by plasmacytoid DCs and Th17 development. In this review, we have summarized recent progress in understanding of Opn's role in variety of inflammatory disorders.

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Year:  2010        PMID: 20196720     DOI: 10.2174/138945010790980321

Source DB:  PubMed          Journal:  Curr Drug Targets        ISSN: 1389-4501            Impact factor:   3.465


  28 in total

Review 1.  Gene polymorphisms: the keys for marker assisted selection and unraveling core regulatory pathways for mastitis resistance.

Authors:  Gina M Pighetti; A A Elliott
Journal:  J Mammary Gland Biol Neoplasia       Date:  2011-10-14       Impact factor: 2.673

2.  Serum level of osteopontin as an inflammatory marker does not indicate disease activity or responsiveness to therapeutic treatments in patients with rheumatoid arthritis.

Authors:  Hye-In Ji; Sang-Hoon Lee; Ran Song; Hyung-In Yang; Yeon-Ah Lee; Seung-Jae Hong; Somi Kim; Yong-Beom Park; Soo-Kon Lee; Myung Chul Yoo; Kyoung Soo Kim
Journal:  Clin Rheumatol       Date:  2013-09-01       Impact factor: 2.980

3.  Osteopontin controls immunosuppression in the tumor microenvironment.

Authors:  Michael R Shurin
Journal:  J Clin Invest       Date:  2018-11-05       Impact factor: 14.808

4.  The role of α9β1 integrin and its ligands in the development of autoimmune diseases.

Authors:  Shigeyuki Kon; Toshimitsu Uede
Journal:  J Cell Commun Signal       Date:  2017-10-03       Impact factor: 5.782

5.  Phosphorylation of osteopontin has proapoptotic and proinflammatory effects on human knee osteoarthritis chondrocytes.

Authors:  Shu-Guang Gao; Yang Yu; Chao Zeng; Shi-Tao Lu; Jian Tian; Chao Cheng; Liang-Jun Li; Guang-Hua Lei
Journal:  Exp Ther Med       Date:  2016-10-05       Impact factor: 2.447

6.  Transglutaminase-mediated oligomerization promotes osteoblast adhesive properties of osteopontin and bone sialoprotein.

Authors:  Jennifer Forsprecher; Zhemeng Wang; Harvey A Goldberg; Mari T Kaartinen
Journal:  Cell Adh Migr       Date:  2011-01-01       Impact factor: 3.405

7.  Distinct severe acute respiratory syndrome coronavirus-induced acute lung injury pathways in two different nonhuman primate species.

Authors:  Saskia L Smits; Judith M A van den Brand; Anna de Lang; Lonneke M E Leijten; Wilfred F van Ijcken; Geert van Amerongen; Albert D M E Osterhaus; Arno C Andeweg; Bart L Haagmans
Journal:  J Virol       Date:  2011-02-16       Impact factor: 5.103

8.  Reactive oxygen species regulate osteopontin expression in a murine model of postischemic neovascularization.

Authors:  Alicia N Lyle; Giji Joseph; Aaron E Fan; Daiana Weiss; Natalia Landázuri; W Robert Taylor
Journal:  Arterioscler Thromb Vasc Biol       Date:  2012-04-05       Impact factor: 8.311

9.  Phosphorylation of osteopontin in osteoarthritis degenerative cartilage and its effect on matrix metalloprotease 13.

Authors:  Mai Xu; Lu Zhang; Lei Zhao; Shuguang Gao; Rui Han; Dazhi Su; Guanghua Lei
Journal:  Rheumatol Int       Date:  2012-11-07       Impact factor: 2.631

10.  Hybrids of a genetically engineered antibody and a carbon nanotube transistor for detection of prostate cancer biomarkers.

Authors:  Mitchell B Lerner; Jimson D'Souza; Tatiana Pazina; Jennifer Dailey; Brett R Goldsmith; Matthew K Robinson; A T Charlie Johnson
Journal:  ACS Nano       Date:  2012-05-17       Impact factor: 15.881

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